A data-driven approach to violin making
Artículo

Access note
Acceso abierto
Publication date
2021
Author
Abstract
Of all the characteristics of a violin, those that concern its shape are probably the most important ones, as the violin maker has complete control over them. Contemporary violin making, however, is still based more on tradition than understanding, and a definitive scientific study of the specific relations that exist between shape and vibrational properties is yet to come and sorely missed. In this article, using standard statistical learning tools, we show that the modal frequencies of violin tops can, in fact, be predicted from geometric parameters, and that artificial intelligence can be successfully applied to traditional violin making. We also study how modal frequencies vary with the thicknesses of the plate (a process often referred to as plate tuning) and discuss the complexity of this dependency. Finally, we propose a predictive tool for plate tuning, which takes into account material and geometric parameters.
Patrocinador
Cultural District of Violin Making of the City of Cremona, Italy
Indexation
Artículo de publícación WoS
Quote Item
Scientifc Reports (2021) 11:9455
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